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A General MIMO Framework for NOMA Downlink and Uplink Transmission Based on Signal Alignment

IEEE Transactions on Wireless Communications · 2016 · Vol. 15(6) · pp. 4438–4454
Zhiguo DingRobert SchoberH. Vincent Poor

Abstract

The application of multiple-input multiple-output (MIMO) techniques to nonorthogonal multiple access (NOMA) systems is important to enhance the performance gains of NOMA. In this paper, a novel MIMO-NOMA framework for downlink and uplink transmission is proposed by applying the concept of signal alignment. By using stochastic geometry, closed-form analytical results are developed to facilitate the performance evaluation of the proposed framework for randomly deployed users and interferers. The impact of different power allocation strategies, namely fixed power allocation and cognitive radio inspired power allocation, on the performance of MIMO-NOMA is also investigated. Computer simulation results are provided to demonstrate the performance of the proposed framework and the accuracy of the developed analytical results.

Advanced Wireless Communication TechnologiesPAPR reduction in OFDMAdvanced Wireless Communication TechniquesNomaTelecommunications linkMIMOComputer scienceTransmission (telecommunications)Electronic engineeringStochastic geometry3G MIMOPower (physics)Multi-user MIMO

Funding

  • Engineering and Physical Sciences Research Council
Citations
610
FWCI
60.78
field-weighted impact
References
37
Percentile
100%
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References
The Application of MIMO to Non-Orthogonal Multiple Access
IEEE Transactions on Wireless Communications · 2015 · 905 citations
Interference Alignment and Degrees of Freedom of the $K$-User Interference Channel
IEEE Transactions on Information Theory · 2008 · 3,037 citations
Non-Orthogonal Multiple Access for Visible Light Communications
IEEE Photonics Technology Letters · 2015 · 357 citations
Impact of User Pairing on 5G Nonorthogonal Multiple-Access Downlink Transmissions
IEEE Transactions on Vehicular Technology · 2015 · 1,612 citations
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